US8938547B1 - Method and system for data usage accounting in a computing device - Google Patents
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- US8938547B1 US8938547B1 US14/478,066 US201414478066A US8938547B1 US 8938547 B1 US8938547 B1 US 8938547B1 US 201414478066 A US201414478066 A US 201414478066A US 8938547 B1 US8938547 B1 US 8938547B1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
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- H04L67/535—Tracking the activity of the user
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
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- H04L63/00—Network architectures or network communication protocols for network security
- H04L63/02—Network architectures or network communication protocols for network security for separating internal from external traffic, e.g. firewalls
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
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Definitions
- the present description relates to methods and systems for data usage accounting and more particularly, to methods and systems for data usage accounting in computing devices with secure enterprise applications and personal applications.
- the employee's device may include both personal and secure applications, it may be necessary to bifurcate the process of data usage accounting.
- the employer may wish to receive an accounting of the data usage associated with the secure applications that have been installed on the employee's device on behalf of the employer. This accounting may be separate from data accounting that may be attributable to unsecure applications that the employee may have installed for personal use.
- This accounting may be separate from data accounting that may be attributable to unsecure applications that the employee may have installed for personal use.
- Unfortunately there is no solution available for tracking data usage with respect to certain system services that may be requested by the secure applications.
- a method of data usage accounting is described herein. This method may be particularly applicable in a setting that includes both secure applications and unsecure applications, although it is not limited to such a configuration.
- a request to access data can be received in which the request is intended for a content provider via a system service.
- the request that is intended for the content provider via the system service can be intercepted and modified to cause the system service to direct the request back to the secure application instead of the content provider.
- a connection can be established with the content provider for the request through the secure application to enable data usage accounting of data that is returned by the content provider.
- An amount of data that is carried over the established connection and that is associated with the secure application can be determined.
- the amount of data that is determined in relation to the secure application can be separate from an amount of data that is determined on behalf of one or more unsecure applications.
- Establishing the connection with the content provider can include establishing a secure connection with the content provider through the secure application.
- the secure connection with the content provider can be a virtual private network (VPN) connection that is individual to the secure application.
- the method can also include the steps of receiving content from the content provider at the secure application and forwarding the received content from the content provider to the system service for processing.
- modifying the intercepted request can include modifying an original uniform resource identifier (URI) of the request by changing the URI associated with the content provider.
- URI uniform resource identifier
- the method can also include the steps of receiving data from the content provider over the established connection and reading the data to determine whether a redirect from the content provider is present. If (or when) a redirect from the content provider is detected, the redirect from the content provider can be modified to ensure that the system service will direct the redirect to the secure application.
- Receiving data from the content provider may include receiving from the content provider a playlist that includes a plurality of original URIs, and modifying the redirect can include modifying at least some of the URIs of the playlist.
- the system service can be a media playback service, and the media playback service is a system application that is also an unsecure application.
- This method can include the steps of receiving an original URI request through one of the secure applications, intercepting the original URI request and modifying the original URI request such that the modified original URI request is to be directed back to the secure application once the modified original URI request has been initially processed by a system service.
- the method can also include the step of tracking data usage associated with the modified original URI request.
- the modified original URI request can be converted back to the original URI request and a connection can be established between the secure application and a content provider for the original URI request.
- the computing device can also have one or more unsecure applications installed thereon. Tracking data usage associated with the modified original URI can include tracking data usage associated with the modified original URI through the secure application.
- the method can also include the step of segregating the data usage tracking associated with the modified original URI from data usage tracking associated with the unsecure applications.
- establishing the connection between the secure application and the content provider can include establishing a secure connection between the secure application and the content provider.
- the secure connection can be individual to the secure application.
- Yet another method of data usage accounting on a computing device is described herein.
- a computing device that has secure applications and unsecure applications installed thereon, multiple sessions of the secure applications can be conducted. An amount of data that is consumed during the sessions of the secure applications can be determined. A data usage total can be tallied for the secure application sessions such that the data usage total for the secure applications is separate from a data usage total associated with the unsecure applications.
- the computing device can include a display that is configured to display both secure and unsecure applications that are installed on the computing device.
- the device can also include a processing unit that is communicatively coupled to the display.
- the processing unit can be configured to receive a data access request through one of the secure applications in which the data request is supported by an unsecure application that is a system service of the computing device.
- the processing unit can also be configured to cause the data access request to be intercepted prior to processing by the unsecure application and to cause the data access request to be modified. Such a modification can cause the unsecure application to direct the data access request to the secure application instead of an intended location of the data access request.
- the processing unit can also be configured to cause a connection between the secure application and the intended location of the data access request to be established.
- the computing device may also include a calculation unit communicatively coupled to the processing unit. The calculation unit can be configured to determine an amount of data that is associated with the data access request through the secure application.
- connection between the secure application and the intended location of the data access request can be a VPN connection that is individual to the secure application.
- the data access request can be a uniform resource locator (URL) based on hypertext transfer protocol (HTTP) or hypertext transfer secure protocol secure (HTTPS).
- the computing device can also include memory that can be associated with the secure application and can be configured to store the data access request for mapping the data access request to the modified data access request.
- the processing unit can be further configured to convert the modified data access request back to its original form to establish the connection between the secure application and the intended location.
- FIG. 1 illustrates an example of a block diagram of the system architecture of a computing device that is configured to practice the subject matter described herein.
- FIG. 2 illustrates an example of a system that shows the computing device of FIG. 1 in communication with one or more remote servers.
- FIG. 3 illustrates an example of a method for data usage accounting.
- FIG. 4 illustrates an example of an interaction between a secure application, a remote server and a system service.
- references in the specification to “one embodiment,” “an embodiment,” “an example embodiment,” “one arrangement,” “an arrangement” or the like, indicate that the embodiment or arrangement described may include a particular feature, structure, or characteristic, but every embodiment may not necessarily include the particular feature, structure, or characteristic. Moreover, such phrases are not necessarily referring to the same embodiment or arrangement. Furthermore, when a particular feature, structure, or characteristic is described in connection with an embodiment or arrangement, it is submitted that it is within the knowledge of one skilled in the art to implement such feature, structure, or characteristic in connection with other embodiments or arrangements whether or not explicitly described.
- the word “among,” as it is used throughout this description, should not necessarily be interpreted as requiring exchanges or interaction among three or more applications, irrespective of grammar rules.
- the word “a” is not necessarily limited to a singular instance of something, as it may mean one or more.
- exemplary as used herein is defined as an example or an instance of an object, apparatus, system, entity, composition, method, step or process.
- communicatively coupled is defined as a state in which two or more components are connected such that communication signals are able to be exchanged (directly or indirectly) between the components on a unidirectional or bidirectional (or multi-directional) manner, either wirelessly, through a wired connection or a combination of both.
- a “computing device” is defined as a component that is configured to perform some process or function for a user and includes both mobile and non-mobile devices.
- computer readable storage medium is defined as one or more components that are configured to store instructions that are to be executed by one or more processing units.
- An “application” is defined as a program or programs that perform one or more particular tasks on a computing device. Examples of an application include programs that may present a user interface for interaction with a user or that may run in the background of an operating environment that may not present a user interface while in the background.
- the term “operating system” is defined as a collection of software components that directs a computing device's operations, including controlling and scheduling the execution of other programs and managing storage, input/output and communication resources.
- a “processing unit” or “processor” is defined as one or more components that execute sets of instructions, and the components may be disparate parts or part of a whole unit and may not necessarily be located in the same physical location.
- memory memory element
- repository storage
- shared memory is memory, a memory element or a repository that is accessible (directly or indirectly) by two or more applications or other processes.
- An “interface” is defined as a component or a group of components that enable(s) a device to communicate with one or more different devices, whether through hard-wired connections, wireless connections or a combination of both.
- An “input/output device” is defined as a device that is configured to at least receive input from a user or a machine that is intended to cause some action or other effect on a component with which the input device is associated.
- a “display” is defined as an apparatus that presents information in visual form and may or may not receive input through a touch screen.
- file system is defined as an abstraction that is used to organize, store and retrieve data.
- secure application is defined as an application that has been modified from its original form to restrict communications between the application and unauthorized programs, applications or devices and to restrict operation of the application based on policy or to alter, augment or add features associated with the operation of the application (or any combination thereof) or —in the case of the application not being modified—an application that is part of a secure workspace that is protected from data exchanges with applications that are part of a personal or an unsecure workspace.
- a “target application” is defined as an application that has been selected for conversion into a secure application.
- An “unsecure application” is defined as an application that has not undergone the modification required to convert the application into a secure application and, as such, is unable to obtain data from a secure application in view of an obfuscation scheme employed by that secure application or is an application that is not part of a secure workspace and is restricted from accessing data from the secure workspace.
- a “virtual machine” is defined as a platform-independent execution environment that emulates a physical machine.
- personal workspace is defined as a workspace, profile or partition that is configured to contain the personal content and unsecure applications or other unsecure programs associated with a user of a computing device on which the personal workspace sits.
- secure workspace is defined as a workspace, profile or partition that is configured to contain secure content, secure applications and other secure programs and requires some form of authentication to be accessed.
- the term “content provider” is defined as a site that offers data for consumption by a computing device.
- system service is defined as an application or a set of applications on a computing device that offer one or more features for access by an unsecure application or a secure application.
- a “secure connection” is defined as a connection in which at least some portion of the data that is exchanged over the connection is encrypted or otherwise obfuscated from unauthorized parties, entities or processes.
- To “consume data” means to receive data from a source, transmit data to a recipient or both.
- solutions have been developed that enable a mobile device to include both personal and enterprise data. Accordingly, it may be useful to segregate data usage accounting associated with the enterprise side from usage associated with the personal space. This process can enable an enterprise to determine how much data that is consumed by the mobile device is the responsibility of the enterprise.
- the method can be practiced in a setting that includes both secure applications and unsecure applications.
- a request to access data can be received in which the request is intended for a content provider via a system service.
- the request that is intended for the content provider via the system service can be intercepted and modified, which can cause the system service to direct the request back to the secure application instead of the content provider.
- a connection can be established with the content provider for the request through the secure application to enable data usage accounting of data that is returned by the content provider.
- data tracking can be conducted for virtually any secure application or otherwise any application associated with an enterprise. This tracking can also be kept apart from any accounting performed for a user's personal usage. Accordingly, an enterprise can accurately determine its accountability for data usage by a computing device that includes both enterprise and personal data.
- the computing device 15 can include a hardware layer 20 , a kernel layer 25 and a libraries layer 30 , which may include a plurality of native libraries.
- This architecture may also include a runtime environment 35 , a system server 40 , a secure framework 45 and an application layer 50 .
- the hardware layer 20 may include any number and type of hardware components, such as one or more displays 55 , one or more input/output (I/O) devices 60 , one or more processing units 65 and any suitable type and number of memory devices 70 and interfaces 75 .
- the I/O devices 60 include speakers, microphones, physical keypads, etc.
- the display 55 can serve as an I/O device 60 in the form of a touch-screen display.
- the interfaces 75 can be configured to support various types of communications, including wired or wireless and through any suitable type of standards and protocols.
- the hardware layer 20 may also include a calculation unit 77 , which can be configured to calculate or determine (or at least assist in the determination or calculation of) data usage totals associated with any type of session conducted on the computing device 15 , including those originating from the application layer 50 .
- the calculation unit 77 may be a separate component or may be part of the processing unit 65 .
- the calculation unit 77 may be remotely located such that it is external to the computing device 15 . In such a case, information regarding the sessions may be sent to a remote location that supports the calculation unit 77 , and the unit 77 can perform its calculation functions once it receives the information.
- the runtime environment 35 can support any suitable number of virtual machines 80 and core libraries 85 , although a virtual machine may not be needed in other arrangements, such as where native code is employed.
- the system server 40 can serve as an abstraction for the underlying layers for the applications in the application layer 50 and can provide numerous system services for the applications.
- the application layer 50 may include any number of unsecure applications 90 and any number of secure applications 95 , one of which may be a core secure application 100 .
- the secure framework 45 can function in a manner similar to that of a conventional framework, but the secure framework 45 can facilitate the encapsulation of a number of secure applications 95 to selectively restrict their data exchanges with the unsecure applications 90 .
- the secure framework 45 can be configured to intercept and modify certain calls from the secure applications 95 , prior to passing them to the system server 40 .
- the unsecure applications 90 are associated with the personal data of a user of the computing device 15 .
- the secure applications 95 are typically associated with confidential or otherwise sensitive information that belongs to or is associated with an enterprise or some other organization, and the user of the device 15 may work for such an entity.
- a virtual partition or workspace may be created on the computing device 15 in which the secure applications 95 (and the core secure application 100 ) are part of a secure workspace 105 , and the unsecure applications 90 are part of a personal workspace 110 .
- a user may be required to provide authentication information, such as a password, PIN or biometric data, to gain access to the secure workspace 105 or to any individual or group of secure applications 95 .
- some of the unsecure applications 90 may be system services 115 that provide features or functionality that is associated with the type of operating system that is installed on the computing device 15 .
- the system service 115 may be an application or a set of applications that live in the background and support different tasks associated with the operating system of the device 15 .
- System services 115 may facilitate the exposure of low-level functions of the hardware layer 20 and the kernel layer 25 to the higher-level application layer 50 .
- Many system services 115 may operate with elevated privileges, in comparison to other applications.
- a common system service 115 that is typically found on computing devices 15 is a media player, which processes and presents media data for a user.
- Another example of a system service 115 may be a photo viewer, which presents digital images for the user.
- the examples listed here are not meant to be limiting, and there are other system services 115 that may be available on the computing device 15 .
- the system services 115 may be trusted unsecure applications 90 that secure applications 95 are permitted to share or otherwise exchange data with.
- An example of a trusted unsecure application 90 may be an unsecure application 90 that is by default installed on the computing device 15 , such as by the manufacturer of the device 15 or a wireless carrier or other entity that provides services to the device 15 .
- Another example of a trusted unsecure application 90 may be an unsecure application 90 that is listed on an application whitelist for one or more secure applications 95 . By being part of the application whitelist, the trusted unsecure application 90 may be preapproved for data exchange with the relevant secure application(s) 95 . Additional information on application whitelisting can be found in U.S. patent application No. 61/973,898, filed on Apr. 2, 2014, which is incorporated by reference herein in its entirety.
- the secure applications 95 and the system architecture may be configured to enable at least some of the calls to the system server 40 to be intercepted.
- U.S. patent application No. 62/033,142 which was filed on Aug. 5, 2014 and is herein incorporated by reference in its entirety, describes a method and system in which some of the system classes are overridden by classes associated with the core secure application 100 , which can allow runtime hooks to be applied against certain system calls. Based on this technique, some of the calls that the secure applications 95 make to the system services 115 can be intercepted and modified, a process that will described below.
- a secure application 95 can be configured to provide additional features that may not have been otherwise available prior to it being converted into a secure application 95 .
- a secure application 95 can be arranged to track the amount of data that it uses for a particular session. This process enables an administrator to determine data usage on a per-application basis.
- secure applications 95 may be managed in accordance with many other policies or configurations, as is known in the art.
- many system services 115 are default applications that are provided as part of the base configuration of the computing device 15 . The developer of the operating system that provides these system services 115 may not permit the system services 115 to be converted into secure applications 95 . As such, many system services 115 may remain as unsecure applications 90 on the computing device 15 . Accordingly, the operation of a system service 115 may not be amenable to being controlled or managed, as is the case with secure applications 95 . The relevance of this condition will be explained below.
- a system 200 that shows the computing device 15 in communication with one or more remote servers 205 is shown.
- One or more communication networks 210 may facilitate the communications between the computing devices 15 and the remote servers 205 .
- the computing device 15 may be a mobile computing device, although the principles described herein may apply to desktop computers or other fixed equipment.
- a mobile computing device may be, for example, a smartphone, laptop, tablet or other devices that may be carried by an individual.
- the network(s) 210 may be composed of various types of components to support wireless or wired communications (including both).
- the network(s) 210 may also be configured to support local or wide area communications (or both).
- the remote servers 205 may host any number of web sites that offer content that may be retrieved by the computing device 15 and may also be configured to accept data from the computing device 15 . Because the servers 205 offer content, they may also be referred to as content providers, although the term “content provider” is certainly not limited to this particular example.
- the unsecure application 90 may sometimes forward the request to a relevant system service 115 . For example, if a user wishes to view a video associated with one of the remote servers 205 through an unsecure application 90 , the unsecure application 90 passes the request to a media player of the computing device 15 . The media player then retrieves the data from the appropriate server 205 and presents such data to the user.
- a similar request would normally be passed to the media player, as well.
- the media player would conventionally establish a connection with the relevant remote server 205 and would present the requested data to the user.
- the system services 115 are typically not permitted to be converted into secure applications 95 , implementing the feature of data accounting in them, as can be done with secure applications 95 , may not be possible. In this instance, difficulties are presented in determining the percentage of data usage that is associated with secure applications 95 in comparison to the consumption of data by unsecure applications 90 .
- the initial data request from the secure application 95 can be intercepted and modified prior to being passed to the media player.
- the media player (or other system service 115 ) can direct the request back to the secure application 95 , and a connection can be established between the secure application 95 and the appropriate remote server 205 to facilitate the exchange of data between the secure application 95 and the remote server 205 .
- This redirection of the request through the secure application 95 can enable an accounting of the amount of data that is associated with this particular session, a feature that can be incorporated into secure applications 95 . Accordingly, an accurate accounting of data usage associated with at least some or all secure applications 95 on the computing device 15 is now possible.
- This arrangement can enable an entity to determine the percentage of data usage that is attributable to it and to the user on a personal basis. Because data usage may be segregated between enterprise use and personal use, the enterprise may be able to craft more accurate data plans with wireless carriers or other similar entities. Moreover, the user, who may own the computing device 15 , would understand that the user would not be charged for data usage associated with that user's work or business and that the user would only be paying for personal data consumption.
- a method 300 of data usage accounting is shown.
- the method 300 may include additional or even fewer steps or processes in comparison to what is illustrated in FIG. 3 .
- the method 300 is not necessarily limited to the chronological order that is shown in FIG. 3 .
- FIGS. 1 , 2 and 4 reference may be made to FIGS. 1 , 2 and 4 , although it is understood that the method 300 may be practiced with any other suitable systems and components and may take advantage of other suitable processes.
- a request to access data can be received via one of the secure applications in which the request is intended for a content provider via a system service.
- the request intended for the content provider via the system service can be intercepted, as shown at step 310 .
- the intercepted request can be modified, which can cause the system service to direct the request back to the secure application instead of the content provider.
- a connection can be established with the content provider for the request through the secure application to enable data usage accounting of data that is returned by the content provider, as shown at step 320 .
- step 325 content from the content provider can be received at the secure application, and the received content from the content provider can be forwarded to the system service for processing, as shown at step 330 .
- An amount of data that is carried over the established connection associated with the secure application can be determined, as shown at step 335 .
- a user may wish to access data through, for example, a secure application 95 that is installed on the computing device 15 .
- the user may desire to retrieve some type of content, such as video, through the secure application 95 .
- the content may need to be retrieved from one of the remote servers 205 .
- the data access request would be passed to the relevant system service 115 and the system service 115 would fetch the content from the remote server 205 .
- the data access request may be intercepted prior to being handled by the operating system and can be modified to direct the request back to the secure application 95 instead of the remote server 205 . Reference will be made to FIG. 4 to help explain this process.
- FIG. 4 an example of an interaction 400 between the secure application 95 , the system service 115 and the remote server 205 is shown.
- the data access request is received and is intercepted and modified.
- the data access request is for video that is stored at one of the remote servers 205 that is associated with a website or some other form of digital content
- the system service 115 is a media playback application.
- the API that is associated with the media playback service can be hooked.
- the uniform resource indicator (URI) related to this data request may be a uniform resource locator (URL) with the associated content available via the hypertext transfer protocol (HTTP) or the hypertext transfer protocol secure (HTTPS).
- HTTP hypertext transfer protocol
- HTTPS hypertext transfer protocol secure
- the URL may be changed prior to being passed to the system service 115 .
- the modification of the URL in one embodiment, may be based on a port number that is provided by the operating system.
- the secure application 95 may create a listening socket on a loopback interface by requesting a socket and port number from the operating system.
- the loopback interface can support inter-process or inter-app communications on the computing device 15 .
- the requested port may be a predetermined value or may be simply a request to the operating system to provide an available port number.
- the URL may be converted into a local-host URL that includes the assigned port number and the rest of the information from the original URL.
- the modified URL may then be passed across to the system service 115 , in this case, the media player.
- multiple listening sockets and ports may be requested from the operating system as part of this process.
- a user may select a link through a secure application 95 , which may have the following exemplary URL associated with it:
- the secure application 95 may request a socket and port value from the operating system, and the port value can factor into the modified URL.
- the original URL may be transformed into the following local-host URL:
- the port value “4444” is now part of the URL string, which can cause the system service 115 to point back to this port created by the secure application 95 .
- the modified URL can include the port value, and the remote information can be added as parameters in the modified URL.
- the secure application 95 can create a proxy when the data is initially requested through the secure application 95 .
- the proxy can act as the intermediary between the system service 115 and the remote server 205 . In doing so, the proxy may listen in on any sockets that were created for the overall modification of the data access request.
- each secure application 95 can be individually configured to generate the proxy for relevant data requests that it receives.
- the secure application 95 may record a copy of the information associated with the original data request and can map that information to the redirect address that has been created.
- the secure application 95 may record the information associated with the original URL in any suitable database, such as the memory 70 of FIG. 1 , and can map this information to the port that was assigned to the modified URL. This way, the secure application 95 can easily determine the original remote server 205 when it receives the modified URL.
- the information of the original data request may not need to be stored and mapped to the redirect address. In the URL example, the original information from the URL can simply be obtained from the modified URL because the original information may be part of the modified information.
- the modified data access request can cause the system service 115 to direct the request back to the secure application 95 , instead of the original remote server 205 . That is, the system service 115 will establish a connection with the secure application 95 via the port that the secure application 95 created.
- the secure application 95 is able to determine the original data access request and can establish a connection with the relevant content provider, such as an appropriate remote server 205 .
- the secure application 95 can determine the original URL request and can open a connection with the location specified by the original URL. This process is reflected in the third step of FIG. 4 . At this point, the secure application 95 can fetch the content from the remote server 205 and can return this content to the system service 115 for processing, as shown in the fourth step. The user may then consume the requested data similar to a normal session.
- the secure application 95 may be configured to track data usage.
- the secure application 95 can determine an amount of data that is carried over the connection that is established with the remote server 205 . This can include both incoming (i.e., from remote server 205 to secure application 95 ) and outgoing (i.e., from secure application 95 to remote server 205 ) content.
- the calculation unit 77 of FIG. 1 can work with the secure application 95 to tally the amount of data consumed by this particular session.
- a cumulative amount of data usage for the secure application 95 over a certain time period can be determined. This process may also be conducted for all or at least some of the other secure applications 95 that are installed on the computing device 15 .
- the enterprise can determine the amount of data usage that is tied to each of its secure applications 95 . This feature can enable the enterprise to determine data usage on the device 15 that is solely attributable to it. As a result, data usage tracking associated with the secure applications can be segregated from data usage that originates from the unsecure applications.
- the connection that is established between the secure application 95 and the remote server 205 can be a secure connection.
- the secure application 95 can be configured to establish virtual private network (VPN) connections with remote locations.
- VPN virtual private network
- Such a VPN connection is individual to the secure application 95 and is different from a system-level VPN. If desired, however, the connection between the secure application 95 and the remote server 205 is not required to be a secure connection.
- the secure application 95 may use a system-level VPN.
- HTTPS traffic may also be tracked in accordance with the procedures presented herein.
- additional steps can be taken when dealing with HTTPS traffic to ensure accurate and complete accounting. For example, if a user is accessing an HTTPS link through the secure application 95 , the original URL may be modified similar to the HTTP examples above, but the connection between the system service 115 and the secure application 95 may be left in the open.
- the secure application 95 can convert the HTTPS request to an HTTP request when the secure application 95 modifies the URL for purposes of directing the system service 115 back to the secure application 95 . That is, the secure application 95 can change the connection type of the data request from a secure connection to an open connection when the data request is modified.
- the following HTTPS URL may be received:
- the secure application 95 can determine that this is an HTTPS request and can modify the URL.
- An exemplary conversion is presented here:
- the HTTPS request is converted to an HTTP request.
- the connection between the system service 115 and the secure application 95 can be out in the open.
- this feature can enable the secure application 95 to handle re-directs from the remote server 205 .
- the session between the secure application 95 and the remote server 205 can be a transport layer security (TLS) connection, which can terminate at the secure application 95 .
- TLS transport layer security
- the secure application 95 may be configured to arrange VPN connections in an individual manner.
- Such an application-level VPN can support any type of traffic that is exchanged between the secure application 95 and the remote server 205 , including both HTTP and HTTPS streams.
- the ability of the secure application 95 to provide an application-level VPN does not impede the ability of the secure application 95 to modify data access requests and then convert them back to their original form, as described above. Further, these techniques can be practiced if the secure application 95 is using a system-level VPN or is not relying on a VPN connection at all.
- some initial data access requests are answered with a re-direct, which instructs the requesting source to another destination to retrieve the desired content.
- a re-direct instructs the requesting source to another destination to retrieve the desired content.
- the requesting device may receive an HTTP re-direct from the server, which causes the device to generate another HTTP request based on the re-direct destination.
- a URL playlist may be sent from the server, which may include a plurality of URLs.
- This particular feature may support HTTP live-streaming, a protocol that enables a client to select from a number of different alternate streams containing the same material encoded at a variety of data rates, which can allow the streaming session to adapt to the available data rate.
- the secure application 95 may be configured to account for these re-directs. For example, if the initial data request is an HTTP request and the remote server 205 returns an HTTP re-direct, the secure application 95 may transform that HTTP re-direct in accordance with the modification process described above. By doing so, the secure application 95 can ensure that the system service 115 establishes the new re-direct connection with the secure application 95 . As such, when the secure application 95 detects a re-direct, the secure application 95 can request another socket and port from the operating system to account for the new destination that originates from the re-direct. The secure application 95 can then open a connection between itself and the new (and appropriate) remote server 205 . This process can be expanded to account for re-direct playlists, such that socket/port pairs are generated when needed for the URLs that make up the playlists.
- the secure application 95 may be required to detect the re-directs in the incoming streams. If the original data access request is not based on a secure protocol, like HTTPS, then the secure application 95 is easily able to detect the re-directs. If the original request is based on a secure protocol, however, complications may arise because the traffic being streamed to the system service may be encrypted. As noted above, when dealing with a secure protocol, the termination point for the secure connection can be placed at the secure application 95 , not the system service 115 . As a result, the secure application 95 can decrypt the incoming traffic and can detect the re-directs, similar to how it would for an unsecure protocol. Thus, as an example, re-directs can be handled for both HTTP and HTTPS.
- system services 115 may offer notifications based on certain events that may be related to data usage.
- the secure applications 95 can register for certain callbacks from the system services 115 that are equipped to provide such notifications.
- the system service 115 can provide one or more notifications that inform the secure application 95 of the start of the session and its eventual ending. Statistics related to the amount of data that was consumed during the session can be incorporated into the notifications, which the secure application 95 can use to track its data usage.
- the overall total usage related to all or at least some of the secure applications 95 can be determined, which can allow the segregation of data consumption between secure and personal profiles, as described earlier. In this case, however, the modification of the data access requests is not required, and the system service may fetch data in its conventional manner. When available with the system services 115 , this feature may be useful for data accounting, particularly when application-level VPNs are not incorporated into the secure applications 95 .
- the description herein has been presented primarily in terms of a secure application 95 handling the modification of data requests and the data usage tracking.
- the description is not so limited.
- these features can be implemented into an unsecure application such that data usage can be tracked for these types of applications on an individual basis.
- the system service that is involved in this process is not limited to a media player.
- any system service that is involved in the exchange of data with a remote location may be applicable to the description provided herein.
- other system services that apply here may include a texting application, a dialer or any other application that facilitates or otherwise supports voice communications, a video or camera application, or a map application or other application that supports mapping features.
- the description herein may apply to any type of application, whether secure or unsecure, that may involve the consumption of content or the use of services in which it may be necessary to distinguish between personal use of such content and services and secure or workspace or enterprise use of the content and services.
- each block in the flowchart or block diagrams may represent a module, segment, or portion of code, which comprises one or more executable instructions for implementing the specified logical function(s).
- the functions noted in the block may occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved.
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Abstract
Description
Claims (20)
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US14/608,662 US9232013B1 (en) | 2014-09-05 | 2015-01-29 | Method and system for enabling data usage accounting |
US14/615,799 US20160071040A1 (en) | 2014-09-05 | 2015-02-06 | Method and system for enabling data usage accounting through a relay |
US14/641,795 US9100390B1 (en) | 2014-09-05 | 2015-03-09 | Method and system for enrolling and authenticating computing devices for data usage accounting |
US14/669,120 US9106538B1 (en) | 2014-09-05 | 2015-03-26 | Method and system for enabling data usage accounting through a relay |
US14/802,701 US9350818B2 (en) | 2014-09-05 | 2015-07-17 | Method and system for enabling data usage accounting for unreliable transport communication |
US14/822,150 US20160072786A1 (en) | 2014-09-05 | 2015-08-10 | Method and system for enabling data usage accounting through a relay |
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US15/658,015 US10410154B2 (en) | 2014-09-05 | 2017-07-24 | Method and system for enabling data usage accounting through a relay |
US16/533,094 US10943198B2 (en) | 2014-09-05 | 2019-08-06 | Method and system for enabling data usage accounting through a relay |
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